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Methods for RNA Modification Mapping Using Deep Sequencing: Established and New Emerging Technologies

机译:使用深度测序进行RNA修饰作图的方法:既有的和新兴的技术

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摘要

New analytics of post-transcriptional RNA modifications have paved the way for a tremendous upswing of the biological and biomedical research in this field. This especially applies to methods that included RNA-Seq techniques, and which typically result in what is termed global scale modification mapping. In this process, positions inside a cell’s transcriptome are receiving a status of potential modification sites (so called modification calling), typically based on a score of some kind that issues from the particular method applied. The resulting data are thought to represent information that goes beyond what is contained in typical transcriptome data, and hence the field has taken to use the term “epitranscriptome”. Due to the high rate of newly published mapping techniques, a significant number of chemically distinct RNA modifications have become amenable to mapping, albeit with variegated accuracy and precision, depending on the nature of the technique. This review gives a brief overview of known techniques, and how they were applied to modification calling.
机译:转录后RNA修饰的新分析方法为该领域生物学和生物医学研究的巨大发展铺平了道路。这尤其适用于包括RNA-Seq技术的方法,通常会导致所谓的全局规模修饰图谱。在此过程中,细胞转录组内的位置通常会收到潜在修饰位点的状态(所谓的修饰调用),该状态通常基于所应用的特定方法产生的某种评分。人们认为所得数据代表的信息超出了典型转录组数据所包含的范围,因此该领域已使用术语“上皮转录组”。由于新发布的作图技术的高速度,根据技术的性质,尽管具有不同的准确性和精确度,但仍有许多化学上不同的RNA修饰适合作图。这篇综述简要概述了已知技术,以及它们如何应用于修改调用。

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